source: trunk/source/processes/electromagnetic/utils/include/G4VAtomDeexcitation.hh@ 1317

Last change on this file since 1317 was 1315, checked in by garnier, 15 years ago

update geant4-09-04-beta-cand-01 interfaces-V09-03-09 vis-V09-03-08

  • Property svn:executable set to *
File size: 4.9 KB
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1//
2// ********************************************************************
3// * License and Disclaimer *
4// * *
5// * The Geant4 software is copyright of the Copyright Holders of *
6// * the Geant4 Collaboration. It is provided under the terms and *
7// * conditions of the Geant4 Software License, included in the file *
8// * LICENSE and available at http://cern.ch/geant4/license . These *
9// * include a list of copyright holders. *
10// * *
11// * Neither the authors of this software system, nor their employing *
12// * institutes,nor the agencies providing financial support for this *
13// * work make any representation or warranty, express or implied, *
14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
16// * for the full disclaimer and the limitation of liability. *
17// * *
18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
20// * By using, copying, modifying or distributing the software (or *
21// * any work based on the software) you agree to acknowledge its *
22// * use in resulting scientific publications, and indicate your *
23// * acceptance of all terms of the Geant4 Software license. *
24// ********************************************************************
25//
26// $Id: G4VAtomDeexcitation.hh,v 1.3 2010/03/30 09:19:56 vnivanch Exp $
27// GEANT4 tag $Name: geant4-09-04-beta-cand-01 $
28//
29// -------------------------------------------------------------------
30//
31// GEANT4 Class header file
32//
33//
34// File name: G4VAtomDeexcitation
35//
36// Author: Alfonso Mantero & Vladimir Ivanchenko
37//
38// Creation date: 30.06.2009
39//
40// Modifications:
41//
42// Class Description:
43//
44// Abstract interface to energy loss models
45
46// -------------------------------------------------------------------
47//
48
49#ifndef G4VAtomDeexcitation_h
50#define G4VAtomDeexcitation_h 1
51
52#include "globals.hh"
53#include <vector>
54
55class G4AtomicShell;
56class G4ParticleDefinition;
57class G4DynamicParticle;
58
59class G4VAtomDeexcitation {
60
61 G4VAtomDeexcitation(const G4String& pname = "");
62
63 virtual ~G4VAtomDeexcitation();
64
65 //========== initialization ==========
66
67 virtual void PreparePhysicsTable(const G4ParticleDefinition&);
68 virtual void BuildPhysicsTable(const G4ParticleDefinition&);
69
70 // PIXE model name
71 inline void SetPIXECrossSectionModel(const G4String&);
72 inline const G4String& PIXECrossSectionModel() const;
73
74 // Activation of deexcitation per detector region
75 void SetFluorescenceActiveRegion(const G4Region* region = 0);
76 void SetAugerActiveRegion(const G4Region* region = 0);
77 void SetPIXECrossSectionActiveRegion(const G4Region* region = 0);
78
79 void SetFluorescenceActiveRegion(const G4String& rname = "");
80 void SetAugerActiveRegion(const G4String& rname = "");
81 void SetPIXECrossSectionActiveRegion(const G4String& rname = "");
82
83 //========== Run time methods ==========
84
85 // Check if deexcitation is active for a given geometry volume
86 G4bool CheckFluorescenceActiveRegion(G4int coupleIndex);
87
88 // Check if deexcitation is active for a given geometry volume
89 G4bool CheckPIXEActiveRegion(G4int coupleIndex);
90
91 // Get atomic shell by shell index, used by discrete processes
92 // (for example, photoelectric), when shell vacancy sampled by the model
93 const G4AtomicShell* GetAtomicShell(G4int Z, G4int ShellIndex);
94
95 // selection of random shell for ionisation process
96 virtual const G4AtomicShell* SelectRandomShell(const G4DynamicParticle*,
97 G4int Z);
98
99 // generation of deexcitation for given atom and shell vacancy
100 virtual void GenerateParticles(std::vector<G4DynamicParticle*>*,
101 const G4AtomicShell*, G4int Z) = 0;
102
103 // access or compute PIXE cross section
104 virtual G4double GetPIXECrossSection (const G4ParticleDefinition*,
105 G4int Z, G4double kinE) = 0;
106
107 // calculate PIXE cross section from the models
108 virtual G4double CalculatePIXECrossSection(const G4ParticleDefinition*,
109 G4int Z, G4double kinE) = 0;
110
111 // Sampling of PIXE for ionisation processes
112 virtual void
113 AlongStepDeexcitation(std::vector<G4DynamicParticle*>* secVect,
114 const G4DynamicParticle* icidentParticle,
115 const G4MaterialCutsCouple*,
116 G4double trueStepLenght,
117 G4double eLoss) = 0;
118
119
120
121private:
122
123 // copy constructor and hide assignment operator
124 G4VAtomDeexcitation(G4VAtomDeexcitation &);
125 G4VAtomDeexcitation & operator=(const G4VAtomDeexcitation &right);
126
127 G4String namePIXE;
128
129};
130
131inline
132void G4VAtomDeexcitation::SetPIXECrossSectionModel(const G4String& n)
133{
134 namePIXE = n;
135}
136
137inline
138const G4String& G4VAtomDeexcitation::PIXECrossSectionModel() const
139{
140 return namePIXE;
141}
142
143#endif
144
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